International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozoa have an ambiguous relationship with the reactive oxygen species (ROS) inherent in the consumption of oxygen that supports aerobic metabolism.Recent Advances: In this review, we shall see that spermatozoa need the action of ROS to reach their structural and functional maturity, but that due to intrinsic unique characteristics, they are, perhaps more than any other cell type, susceptible to oxidative damage. Recent studies have improved our knowledge of how oxidative damage affects sperm structures and functions. The focus of this review will be on how genetic and epigenetic oxidative alterations to spermatozoa can have dramatic unintended co...
Oxidative stress is a state related to increased cellular damage caused by oxygen and oxygen-derived...
Oxidative energy production is inevitably associated with the generation of reactive oxygen species...
Spermatozoa are highly vulnerable to oxidative attack because they lack significant antioxidant prot...
International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozo...
The ability of spermatozoa to generate reactive oxygen species (ROS) has been appreciated since the ...
Abstract Human spermatozoa generate low levels of reactive oxygen species in order to stimulate key ...
Reactive oxygen species (ROS) are inevitable by-products of aerobic cells. A delicate balance betwee...
Reactive oxygen metabolites are known to disrupt sperm-oo-cyte fusion, sperm movement, and DNA integ...
Reactive oxygen species (ROS) generated at low levels during mitochondrial respiration have key role...
International audienceThis article addresses the importance of oxidative processes in both the gener...
Infertility, especially in the last decade, has been rising as a global problem, affecting ap...
Oxidative stress occurs when the production of potentially destructive reactive oxygen species (ROS)...
Reactive oxygen species (ROS) have beneficial or detrimental effects on sperm functions depending on...
On the one hand, reactive oxygen species (ROS) are mandatory mediators for essential cellular functi...
International audienceReactive oxygen species (ROS) play a critical role in defining the functional ...
Oxidative stress is a state related to increased cellular damage caused by oxygen and oxygen-derived...
Oxidative energy production is inevitably associated with the generation of reactive oxygen species...
Spermatozoa are highly vulnerable to oxidative attack because they lack significant antioxidant prot...
International audienceSignificance: Among the 200 or so cell types that comprise mammals, spermatozo...
The ability of spermatozoa to generate reactive oxygen species (ROS) has been appreciated since the ...
Abstract Human spermatozoa generate low levels of reactive oxygen species in order to stimulate key ...
Reactive oxygen species (ROS) are inevitable by-products of aerobic cells. A delicate balance betwee...
Reactive oxygen metabolites are known to disrupt sperm-oo-cyte fusion, sperm movement, and DNA integ...
Reactive oxygen species (ROS) generated at low levels during mitochondrial respiration have key role...
International audienceThis article addresses the importance of oxidative processes in both the gener...
Infertility, especially in the last decade, has been rising as a global problem, affecting ap...
Oxidative stress occurs when the production of potentially destructive reactive oxygen species (ROS)...
Reactive oxygen species (ROS) have beneficial or detrimental effects on sperm functions depending on...
On the one hand, reactive oxygen species (ROS) are mandatory mediators for essential cellular functi...
International audienceReactive oxygen species (ROS) play a critical role in defining the functional ...
Oxidative stress is a state related to increased cellular damage caused by oxygen and oxygen-derived...
Oxidative energy production is inevitably associated with the generation of reactive oxygen species...
Spermatozoa are highly vulnerable to oxidative attack because they lack significant antioxidant prot...